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Sec 2.8: THE DERIVATIVE AS A FUNCTION replace a by x
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Sec 2.8: THE DERIVATIVE AS A FUNCTION Slopes : 0 + -
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Sec 2.8: THE DERIVATIVE AS A FUNCTION
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Definition: A function f is differentiable on an open interval (a, b) if it is differentiable at every number in the interval. Definition: A function f is differentiable on an open interval (a, b) if it is differentiable at every number in the interval.
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Sec 2.8: THE DERIVATIVE AS A FUNCTION 2 properties continuity differentiability Proof: Remark: f cont. at af diff. at a Remark: f discont. at af not diff. at a Remark: f discont. at a f not diff. at a
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Sec 2.8: THE DERIVATIVE AS A FUNCTION Example: f cont. at af diff. at a f discont. at af not diff. at a f discont. at a f not diff. at a
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Sec 2.8: THE DERIVATIVE AS A FUNCTION Example: f cont. at af diff. at a f discont. at af not diff. at a f discont. at a f not diff. at a
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Sec 2.8: THE DERIVATIVE AS A FUNCTION HOW CAN A FUNCTION FAIL TO BE DIFFERENTIABLE?
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Sec 2.8: THE DERIVATIVE AS A FUNCTION Higher Derivative Note: jerk acceleration velocity
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MATH 101- term 101 : CALCULUS I – Dr. Faisal Fairag R
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R H
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H
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H H
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H R R
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H H H R
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